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将潮霉素抗性整合到黑芥中,并通过不对称原生质体融合将其转移到油菜中。

Incorporation of hygromycin resistance in Brassica nigra and its transfer to B. napus through asymmetric protoplast fusion.

机构信息

Institut für Angewandte Genetik, Freie Universität Berlin, D-1000, Berlin 33.

出版信息

Theor Appl Genet. 1989 Aug;78(2):194-200. doi: 10.1007/BF00288799.

Abstract

With the idea to develop a selection system for asymmetric somatic hybrids between oilseed rape (Brassica napus) and black mustard (B. nigra), the marker gene hygromycin resistance was introduced in this last species by protoplast transformation with the disarmed Agrobacterium tumefaciens strain C58 pGV 3850 HPT. The B. nigra lines used for transformation had been previously selected for resistance to two important rape pathogens (Phoma lingam, Plasmodiophora brassicae). Asymmetric somatic hybrids were obtained through fusion of X-ray irradiated (mitotically inactivated) B. nigra protoplasts from transformed lines as donor with intact protoplasts of B. napus, using the hygromycin resistance as selection marker for fusion products. The somatic hybrids hitherto obtained expressed both hygromycin phosphotransferase and nopaline synthase genes. Previous experience with other plant species had demonstrated that besides the T-DNA, other genes of the donor genome can be co-transferred. In this way, the produced hybrids constitute a valuable material for studying the possibility to transfer agronomically relevant characters - in our case, diseases resistances - through asymmetric protoplast fusion.

摘要

为了开发油菜(甘蓝型油菜)和黑芥(黑芥)之间不对称体细胞杂种的选择系统,利用脱武装根瘤农杆菌菌株 C58 pGV3850 HPT 对原生质体进行转化,将标记基因潮霉素抗性导入该物种。用于转化的黑芥系先前已被选择对两种重要的油菜病原体(黑胫病菌、芸薹根肿菌)具有抗性。通过融合 X 射线辐照(有丝分裂失活)的来自转化系的黑芥原生质体作为供体与完整的油菜原生质体,利用潮霉素抗性作为融合产物的选择标记,获得不对称体细胞杂种。迄今获得的体细胞杂种均表达潮霉素磷酸转移酶和胭脂碱合成酶基因。与其他植物物种的先前经验表明,除了 T-DNA 外,供体基因组的其他基因也可以被共转移。通过这种方式,产生的杂种构成了研究通过不对称原生质体融合转移农艺相关性状(在我们的情况下,疾病抗性)的可能性的有价值的材料。

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